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具体来说,攀爬是什么意思?评估鹦鹉倾斜运动的时空步态特征。

What does climbing mean exactly? Assessing spatiotemporal gait characteristics of inclined locomotion in parrots.

机构信息

Department of Anatomy, New York Institute of Technology College of Osteopathic Medicine, Old Westbury, NY, USA.

School of Mechanical and Mechatronic Engineering, The University of Technology Sydney (UTS), Sydney, Australia.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2024 Jan;210(1):19-33. doi: 10.1007/s00359-023-01630-0. Epub 2023 May 4.

Abstract

At what inclination does climbing begin? In this paper, we investigate the transition from walking to climbing in two species of parrot (Agapornis roseicollis and Nymphicus hollandicus) that are known to incorporate both their tail and their craniocervical system into the gait cycle during vertical climbing. Locomotor behaviors ranging in inclination were observed at angles between 0° and 90° for A. roseicollis, and 45°-85° degrees for N. hollandicus. Use of the tail in both species was observed at 45° inclination, and was joined at higher inclinations (> 65°) by use of the craniocervical system. Additionally, as inclination approached (but remained below) 90°, locomotor speeds were reduced while gaits were characterized by higher duty factors and lower stride frequency. These gait changes are consistent with those thought to increase stability. At 90°, A. roseicollis significantly increased its stride length, resulting in higher overall locomotor speed. Collectively these data demonstrate that the transition between horizontal walking and vertical climbing is gradual, incrementally altering several components of gait as inclinations increase. Such data underscore the need for further investigation into how exactly "climbing" is defined and the specific locomotor characteristics that differentiate this behavior from level walking.

摘要

攀爬从什么角度开始?在本文中,我们研究了两种鹦鹉(桃面爱情鸟和绿颊锥尾鹦鹉)从行走向攀爬过渡的行为,这两种鹦鹉在垂直攀爬时已知会将尾巴和颅颈系统纳入步态周期。观察到的运动行为的倾斜角度范围为 0°到 90°的 A. roseicollis,以及 45°-85°的 N. hollandicus。在这两个物种中,在 45°的倾斜度下观察到了尾巴的使用,而在更高的倾斜度(>65°)下则使用了颅颈系统。此外,随着倾斜度接近(但仍低于)90°,运动速度降低,而步态的特点是更高的占空比和更低的步频。这些步态变化与那些被认为可以增加稳定性的变化一致。在 90°时,A. roseicollis 显著增加了步长,从而提高了整体运动速度。总的来说,这些数据表明,从水平行走到垂直攀爬的过渡是逐渐的,随着倾斜度的增加,逐渐改变了几个步态的组成部分。这些数据强调了需要进一步研究“攀爬”的确切定义以及区分这种行为与水平行走的具体运动特征。

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